Gene expression profiling of hypertrophic cardiomyocytes identifies new players in pathological remodelling
Cardiovascular Research

Abstract
Pathological cardiac remodelling is characterized by cardiomyocyte (CM) hypertrophy and fibroblast activation, which can ultimately lead to maladaptive hypertrophy and heart failure (HF). Genome-wide expression analysis on heart tissue has been instrumental for the identification of molecular mechanisms at play. However, these data were based on signals derived from all cardiac cell types. Here, we aimed for a more detailed view on molecular changes driving maladaptive CM hypertrophy to aid in the development of therapies to reverse pathological remodelling.
Utilizing CM-specific reporter mice exposed to pressure overload by transverse aortic banding and CM isolation by flow cytometry, we obtained gene expression profiles of hypertrophic CMs in the more immediate phase after stress, and CMs showing pathological hypertrophy. We identified subsets of genes differentially regulated and specific for either stage. Among the genes specifically up-regulated in the CMs during the maladaptive phase we found known stress markers, such as
Using CM-specific transcriptomic analysis, we identified novel genes induced during pathological hypertrophy that are relevant for human HF, and we show that
Contributors

Marta Vigil-Garcia
Author

Charlotte J Demkes
Author

Joep E C Eding
Author

Danielle Versteeg
Author

Hesther de Ruiter
Author

Ilaria Perini
Author

Lieneke Kooijman
Author

Monika M Gladka
Author

Folkert W Asselbergs
Author
Amsterdam University Medical Centre (AUMC) Amsterdam , Netherlands (The)

Aryan Vink
Author

Magdalena Harakalova
Author

Alexander Bossu
Author

Toon A B van Veen
Author

Cornelis J Boogerd
Author




